We give an outlook on the future of coherence theory and many-body quantum dynamics as experiments develop in the arena of ultra-cold atoms. Novel results on quantum heating of centre-of-mass temperature in evaporative cooling and simulation methods for long-range interactions are obtained, using positive-P phase-space techniques
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
Phase-space representations are of increasing importance as a viable and successful means to study e...
Phase-space representations are of increasing importance as a viable and successful means to study e...
We give an outlook on the future of coherence theory and many-body quantum dynamics as experiments d...
We review recent developments in the theory of quantum dynamics in ultracold atomic physics, includi...
Phase-space representations are of increasing importance as a viable and successful means to study e...
We introduce a phase-space representation for qubits and spin models. The technique uses an SU(n) co...
We present a phase-space method for fermionic systems, which enables simulations of the dynamics and...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
We review phase-space techniques based on the Wigner representation that provide an approximate desc...
5 págs.; 4 figs.; complementary material© 2015, National Academy of Sciences. All rights reserved. T...
We introduce a unified Gaussian quantum operator representation for fermions and bosons. The represe...
Recent experimental progress has enabled cold atomic gases to be studied at nano-kelvin temperatures...
Recent experimental progress has enabled cold atomic gases to be studied at nano-kelvin temperatures...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
Phase-space representations are of increasing importance as a viable and successful means to study e...
Phase-space representations are of increasing importance as a viable and successful means to study e...
We give an outlook on the future of coherence theory and many-body quantum dynamics as experiments d...
We review recent developments in the theory of quantum dynamics in ultracold atomic physics, includi...
Phase-space representations are of increasing importance as a viable and successful means to study e...
We introduce a phase-space representation for qubits and spin models. The technique uses an SU(n) co...
We present a phase-space method for fermionic systems, which enables simulations of the dynamics and...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
We review phase-space techniques based on the Wigner representation that provide an approximate desc...
5 págs.; 4 figs.; complementary material© 2015, National Academy of Sciences. All rights reserved. T...
We introduce a unified Gaussian quantum operator representation for fermions and bosons. The represe...
Recent experimental progress has enabled cold atomic gases to be studied at nano-kelvin temperatures...
Recent experimental progress has enabled cold atomic gases to be studied at nano-kelvin temperatures...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
Phase-space representations are of increasing importance as a viable and successful means to study e...
Phase-space representations are of increasing importance as a viable and successful means to study e...